抗多药生物膜感染的纳米材料。

IF 5 Q1 ENGINEERING, BIOMEDICAL BME frontiers Pub Date : 2023-04-24 eCollection Date: 2023-01-01 DOI:10.34133/bmef.0017
Vincent M Rotello
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引用次数: 0

摘要

耐多药细菌感染对全球健康构成严重威胁。细菌抗生素耐药性的发展,加上缺乏新抗生素的开发,正在产生需要最后使用抗生素的感染,甚至一些我们没有可用治疗方法的感染。基于生物膜的感染是一些最具挑战性的治疗目标。生物膜基质提供了一个物理屏障,可以阻碍抗生素和抗微生物剂进入驻留细菌。生物膜中发现的表型多样性进一步加剧了消除感染的难度,静止的“持久”细胞逃避治疗,并在治疗后重新引发感染。纳米材料为对抗这些难治性生物膜感染提供了一种工具。纳米材料独特的尺寸和物理特性使其具有穿透和破坏生物膜的能力。纳米材料还可以获得传统抗菌药物无法获得的抗菌途径,为治疗生物膜感染提供了一种协同策略。这篇综述将总结抗生素耐药性和生物膜在治疗感染时面临的关键挑战,并提供如何使用纳米材料来应对这些挑战的精选例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Nanomaterials for Fighting Multidrug-Resistant Biofilm Infections.

Multidrug-resistant bacterial infections represent a dire threat to global health. The development of antibiotic resistance in bacteria coupled with the lack of development of new antibiotics is creating infections requiring antibiotics of last resort, and even some infections for which we have no available treatment. Biofilm-based infections present some of the most challenging targets for treatment. The biofilm matrix provides a physical barrier that can impede access of antibiotics and antimicrobials to resident bacteria. The phenotypic diversity found in biofilms further exacerbates the difficulty of eliminating infections, with quiescent "persister" cells evading therapeutics and re-initiating infections after treatment. Nanomaterials provide a tool for combatting these refractory biofilm infections. The distinctive size regime and physical properties of nanomaterials provide them with the capability to penetrate and disrupt biofilms. Nanomaterials can also access antimicrobial pathways inaccessible to conventional antimicrobials, providing a synergistic strategy for treating biofilm infections. This review will summarize key challenges presented by antibiotic resistance and biofilms when treating infection and provide selected examples of how nanomaterials are being used to address these challenges.

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CiteScore
7.10
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0.00%
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审稿时长
16 weeks
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